Human Immunodeficiency Virus-Restricted Replication in Astrocytes and the Ability of Gamma Interferon To Modulate This Restriction Are Regulated by a Downstream Effector of the Wnt Signaling Pathway

Author:

Carroll-Anzinger Deborah1,Kumar Anvita1,Adarichev Vyacheslav2,Kashanchi Fatah3,Al-Harthi Lena1

Affiliation:

1. Department of Immunology/Microbiology

2. Section of Molecular Medicine, Department of Orthopedic Surgery, Rush University Medical Center, Chicago, Illinois 60612

3. Department of Biochemistry and Molecular Biology, George Washington University, Washington, DC 20052

Abstract

ABSTRACT Astrocyte dysregulation correlates with the severity and the rate of human immunodeficiency virus (HIV)-associated dementia (HAD) progression, highlighting a pivotal role for astrocytes in HIV neuropathogenesis. Yet, astrocytes limit HIV, indicating that they posses an intrinsic molecular mechanism to restrict HIV replication. We previously established that this restriction can be partly overcome by priming astrocytes with gamma interferon (IFN-γ), which is elevated in the cerebral spinal fluid of HAD patients. We evaluated the mechanism of restrictive HIV replication in astrocytes and how IFN-γ priming modulates this restriction. We demonstrate that the downstream effector of Wnt signaling, T-cell factor 4 (TCF-4), is part of a transcriptional complex that is immunoprecipitated with HIV TAR-containing region in untreated astrocytes but not in IFN-γ-treated cells. Blocking TCF-4 activity with a dominant-negative mutant enhanced HIV replication by threefold in both the astrocytoma cell line U87MG and primary fetal astrocytes. Using a TCF-4 reporter plasmid, we directly demonstrate that Wnt signaling is active in human astrocytes and is markedly reduced by IFN-γ treatment. Collectively, these data implicate TCF-4 in repressing HIV replication and the ability of IFN-γ to regulate this restriction by inhibiting TCF-4. Given that TCF-4 is the downstream effector of Wnt signaling, harnessing Wnt signaling as an intrinsic molecular mechanism to limit HIV replication may emerge as a powerful tool to regulate HIV replication within and outside of the brain.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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1. HIV infection of non-classical cells in the brain;Retrovirology;2023-01-13

2. Forging a Functional Cure for HIV: Transcription Regulators and Inhibitors;Viruses;2022-09-07

3. Nef inhibits HIV transcription and gene expression in astrocytes and HIV transmission from astrocytes to CD4+ T cells;Journal of NeuroVirology;2022-08-24

4. Mesenchymal Stromal Cells: a Possible Reservoir for HIV-1?;Stem Cell Reviews and Reports;2022-01-01

5. Novel Role of Transcriptional Factor Kaiso in HIV Infection;Proceedings of the 15th International Joint Conference on Biomedical Engineering Systems and Technologies;2022

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